Difference between revisions of "Sulfur dichloride"

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[[File:Sulfur dichloride.JPG|thumb|317x317px|Photo by sciencemadness user len1]]
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| Name = Sulfur dichloride
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| Reference =
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| IUPACName = Sulfur dichloride<br>Sulfur(II) chloride<br>Dichlorosulfane
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| PIN =
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| SystematicName =
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| OtherNames = Chlorine sulfide<br>Chloro thiohypochlorite<br>Dichlorosulfide<br>Sulphur chloride
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| ImageFile = Sulfur dichloride.JPG
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| ImageSize = 300
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| ImageCaption = Photo by sciencemadness user len1
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| Section1 = {{Chembox Identifiers
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| Section2 = {{Chembox Properties
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| AtmosphericOHRateConstant =
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| Appearance = Red fuming liquid
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| BoilingPt =
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| BoilingPtC = 59
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| BoilingPt_ref =
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| BoilingPt_notes =
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| Density = 1.621 g/cm<sup>3</sup> (at 20 °C)
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| Formula = SCl<sub>2</sub>
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| HenryConstant =
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| LogP =
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| MolarMass = 102.97 g/mol
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| MeltingPt =
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| MeltingPtC = −121.0
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| Odor = Pungent
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| pKa =
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| Solubility = Reacts
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| SolubleOther = Reacts with [[alcohol]]s<br>Soluble in glacial [[acetic acid]], [[benzene]], [[bromine]], [[carbon tetrachloride|CCl<sub>4</sub>]], [[chloroethane]], [[cyclohexane]], [[disulfur dichloride]], [[hexane]], [[phosgene]]<br>Insoluble in liq. [[sulfur dioxide|SO<sub>2</sub>]]
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| VaporPressure = 162 mmHg (at 20 °C)
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| MolShape = Bent
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| Section4 = {{Chembox Thermochemistry
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| DeltaGf =
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| DeltaHf = 493.9 kJ/mol
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| HeatCapacity = 52.65 J·mol<sup>-1</sup>·K<sup>-1</sup>
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| AutoignitionPt = 234 °C
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| ExternalMSDS = [http://www.cpcb.nic.in/divisionsofheadoffice/pci-ssi/MATERIAL_SAFETY-DATABASE/MSDS2008/586.pdf CPCB]
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| FlashPt = 118 °C
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| MainHazards = Corrosive<br>Toxic
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| OtherCompounds = [[Disulfur dichloride]]<br>[[Thionyl chloride]]<br>[[Sulfuryl chloride]]
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'''Sulfur dichloride''' ('''SCl<sub>2</sub>''') is a foul smelling red liquid created through the reaction of [[sulfur]] and [[chlorine]].
 
'''Sulfur dichloride''' ('''SCl<sub>2</sub>''') is a foul smelling red liquid created through the reaction of [[sulfur]] and [[chlorine]].
  
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===Chemical===
 
===Chemical===
 
Disulfur dichloride reacts with water to form [[sulfur dioxide]] and [[hydrochloric acid]], so an open container will produce thick white fumes as it reacts with moisture in the air.
 
Disulfur dichloride reacts with water to form [[sulfur dioxide]] and [[hydrochloric acid]], so an open container will produce thick white fumes as it reacts with moisture in the air.
Sulfur dichloride slowly evolves chlorine, leaving [[Disulfur dichloride|disulfur dichloride]] unless the container can maintain a small positive pressure of chlorine.  
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Sulfur dichloride slowly evolves chlorine, leaving [[disulfur dichloride]] unless the container can maintain a small positive pressure of chlorine.  
  
 
Sulfur chlorides can be used to produce [[thionyl chloride]].
 
Sulfur chlorides can be used to produce [[thionyl chloride]].
  
 
===Physical===
 
===Physical===
SCl<sub>2</sub> has a highly unpleasant odour, as well as producing HCl and SO<sub>2</sub> which are also highly unpleasant to breathe in.  
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SCl<sub>2</sub> has a highly unpleasant odor, as well as producing HCl and SO<sub>2</sub> which are also highly unpleasant to breathe in.  
  
 
It is a bright red liquid with viscosity similar to water.  
 
It is a bright red liquid with viscosity similar to water.  
  
 
==Availability==
 
==Availability==
Due to air instability and pressure build-up from decomposition to the monochloride,sulfur dichloride is generally not avaliable to buy.   
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Due to air instability and pressure build-up from decomposition to the monochloride, sulfur dichloride is generally not sold to individuals, and has to be made in situ.   
 
[[File:SCl2 setup by Tdep.jpg|thumb|242x242px|Chlorine is produced through TCCA + HCl and dried over CaCl<sub>2</sub> before being passed into the molten sulfur]]
 
[[File:SCl2 setup by Tdep.jpg|thumb|242x242px|Chlorine is produced through TCCA + HCl and dried over CaCl<sub>2</sub> before being passed into the molten sulfur]]
  
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===Disposal===
 
===Disposal===
Reaction with water destroys the compound, and this can be effective if done outside or in an area capable of safely removing the sulfur dioxide. Aqueous sodium hydroxide solutions can also be used. Calcium hydroxide suspension is also a good choice.
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Reaction with water destroys the compound, and this can be effective if done outside or in an area capable of safely removing the sulfur dioxide. Aqueous sodium hydroxide solutions can also be used. Calcium hydroxide suspension is also a good choice. Be careful to only add the compound dropwise in a large amount of neutralizing solution.
  
 
==See also==
 
==See also==
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<references/>
 
<references/>
 
===Relevant Sciencemadness threads===
 
===Relevant Sciencemadness threads===
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*[http://www.sciencemadness.org/talk/viewthread.php?tid=21595 Mystery of SCl2 Hydrolysis - Original Theory]
  
 
[[Category:Chemical compounds]]
 
[[Category:Chemical compounds]]
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[[Category:Materials that react with water]]
 
[[Category:Materials that react with water]]
 
[[Category:Schedule 3 chemicals]]
 
[[Category:Schedule 3 chemicals]]
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[[Category:Irritants]]
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[[Category:Liquids]]

Latest revision as of 20:06, 21 January 2020

Sulfur dichloride
Sulfur dichloride.JPG
Photo by sciencemadness user len1
Names
IUPAC names
Sulfur dichloride
Sulfur(II) chloride
Dichlorosulfane
Other names
Chlorine sulfide
Chloro thiohypochlorite
Dichlorosulfide
Sulphur chloride
Properties
SCl2
Molar mass 102.97 g/mol
Appearance Red fuming liquid
Odor Pungent
Density 1.621 g/cm3 (at 20 °C)
Melting point −121.0 °C (−185.8 °F; 152.2 K)
Boiling point 59 °C (138 °F; 332 K)
Reacts
Solubility Reacts with alcohols
Soluble in glacial acetic acid, benzene, bromine, CCl4, chloroethane, cyclohexane, disulfur dichloride, hexane, phosgene
Insoluble in liq. SO2
Vapor pressure 162 mmHg (at 20 °C)
Thermochemistry
493.9 kJ/mol
Hazards
Safety data sheet CPCB
Flash point 118 °C
Related compounds
Related compounds
Disulfur dichloride
Thionyl chloride
Sulfuryl chloride
Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).
Infobox references

Sulfur dichloride (SCl2) is a foul smelling red liquid created through the reaction of sulfur and chlorine.

Properties

Chemical

Disulfur dichloride reacts with water to form sulfur dioxide and hydrochloric acid, so an open container will produce thick white fumes as it reacts with moisture in the air.

Sulfur dichloride slowly evolves chlorine, leaving disulfur dichloride unless the container can maintain a small positive pressure of chlorine.

Sulfur chlorides can be used to produce thionyl chloride.

Physical

SCl2 has a highly unpleasant odor, as well as producing HCl and SO2 which are also highly unpleasant to breathe in.

It is a bright red liquid with viscosity similar to water.

Availability

Due to air instability and pressure build-up from decomposition to the monochloride, sulfur dichloride is generally not sold to individuals, and has to be made in situ.

Chlorine is produced through TCCA + HCl and dried over CaCl2 before being passed into the molten sulfur

Preparation

SCl2 distills over as chlorine is passed over molten sulfur. This reaction may also produce disulfur dichloride.

Both sulfur and chlorine are common chemicals in a home laboratory but the synthesis of sulfur dichloride is complicated as it requires simultaneous distillation while gassing the sulfur with the chlorine which requires moderately complicated glassware such as two necked flasks or a very well improvised setup.

An older method involves the reaction of sulfuryl chloride (which can be made by reacting dry sulfur dioxide and chlorine gas) with anhydrous zinc sulfide, in the presence of aluminium chloride.[1]

Projects

Handling

Safety

Sulfur dichloride is extremely toxic and corrosive and proper protection must be worn when working with the compound. Work should be performed in a fumehood.

Storage

SCl2 should be stored in a sealed container, in a dry cold place. As it slowly decomposes over time, it's best to open the bottle from time to time to release the pressure.

Disposal

Reaction with water destroys the compound, and this can be effective if done outside or in an area capable of safely removing the sulfur dioxide. Aqueous sodium hydroxide solutions can also be used. Calcium hydroxide suspension is also a good choice. Be careful to only add the compound dropwise in a large amount of neutralizing solution.

See also

References

  1. Ruff, O.; Ber. Deutsch. Chem. Ges.; vol. 34; (1901); p. 1749 - 1758

Relevant Sciencemadness threads